首页> 外文期刊>The Journal of biological chemistry >The crystal structure of human forkhead box N1 in complex with DNA reveals the structural basis for forkhead box family specificity
【24h】

The crystal structure of human forkhead box N1 in complex with DNA reveals the structural basis for forkhead box family specificity

机译:与DNA复合物中的人叉头箱N1的晶体结构显示出叉头箱家庭特异性的结构基础

获取原文
           

摘要

Forkhead box N1 (FOXN1) is a member of the forkhead box family of transcription factors and plays an important role in thymic epithelial cell differentiation and development. FOXN1 mutations in humans and mice give rise to the “nude” phenotype, which is marked by athymia. FOXN1 belongs to a subset of the FOX family that recognizes an alternative forkhead-like (FHL) consensus sequence (GACGC) that is different from the more widely recognized forkhead (FKH) sequence RYAAAYA (where R is purine, and Y is pyrimidine). Here, we present the FOXN1 structure in complex with DNA containing an FHL motif at 1.6 ? resolution, in which the DNA sequence is recognized by a mixture of direct and water-mediated contacts provided by residues in an α-helix inserted in the DNA major groove (the recognition helix). Comparisons with the structure of other FOX family members revealed that the FKH and FHL DNA sequences are bound in two distinct modes, with partially different registers for the protein DNA contacts. We identified a single alternative rotamer within the recognition helix itself as an important determinant of DNA specificity and found protein sequence features in the recognition helix that could be used to predict the specificity of other FOX family members. Finally, we demonstrate that the C-terminal region of FOXN1 is required for high-affinity DNA binding and that FOXN1 has a significantly reduced affinity for DNA that contains 5′-methylcytosine, which may have implications for the role of FOXN1 in thymic involution.
机译:FORKHEAD盒N1(FOXN1)是转录因子的叉头盒系列的成员,在胸腺上皮细胞分化和发育中起重要作用。人类和小鼠的Foxn1突变产生了“裸体”表型,其标志着由Athymia标志。 Foxn1属于福克斯族的子集,识别出与更广泛识别的叉头(FKH)序列(FKH)序列ryaaaya(其中R是嘌呤,而Y是嘧啶)不同的替代叉头(FHL)共有序列(Gacgc)。在这里,我们将Foxn1结构与1.6的DNA一起呈现含有FHL主题的DNA?分辨率,其中DNA序列被插入DNA主沟(识别螺旋)中的α-螺旋中的残基提供的直接和水介导的触点的混合物识别。与其他狐狸家族成员的结构的比较显示FKH和FHL DNA序列以两种明显的模式结合,具有蛋白质DNA接触的部分不同寄存器。我们在识别螺旋本身内识别出单个替代转子,作为DNA特异性的重要决定因素,并在识别螺旋中发现蛋白质序列特征,可用于预测其他狐狸家庭成员的特异性。最后,我们证明了FoxN1的C末端区域是高亲和力DNA结合所必需的,并且FOXN1对含有5'-甲基胞嘧啶的DNA具有显着降低的亲和力,这可能对Foxn1在胸腺的作用有影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号